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640297-84-3

1,10-Phenanthroline, 3,8-diethynyl-

Catalog#: AR01GV0T  |   CAS#: 640297-84-3  |   MDL#: MFCD32643325  |   MF: C16H8N2  |   MW: 228.2481

Packsize Purity Price Availability Quantity
100mg 98% $124.00 Global Stock Buy Now Add To Cart
250mg 98% $210.00 Global Stock Buy Now Add To Cart
1g 98% $567.00 Global Stock Buy Now Add To Cart
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Catalog Number AR01GV0T
Chemical Name 1,10-Phenanthroline, 3,8-diethynyl-
CAS Number 640297-84-3
Molecular Formula C16H8N2
Molecular Weight 228.2481
MDL Number MFCD32643325
SMILES C#Cc1cnc2c(c1)ccc1c2ncc(c1)C#C

3,8-Diethynyl-1,10-phenanthroline is a versatile compound frequently utilized in chemical synthesis due to its unique structural properties and reactivity. This compound serves as a valuable building block in the creation of a wide range of functional materials and complex organic molecules. In particular, its ability to act as a bidentate ligand makes it highly sought after in coordination chemistry.One key application of 3,8-Diethynyl-1,10-phenanthroline is in the formation of coordination complexes with transition metals. By coordinating with metals such as ruthenium, iridium, or platinum, this compound can facilitate various catalytic reactions, including C-C bond formation, cycloadditions, and cross-coupling reactions. Moreover, the rigid backbone of 3,8-Diethynyl-1,10-phenanthroline imparts steric and electronic effects that can influence the selectivity and efficiency of these catalytic processes.Another important use of 3,8-Diethynyl-1,10-phenanthroline is in the construction of molecular scaffolds for organic synthesis. Its acetylenic groups enable facile derivatization through Sonogashira or Glaser coupling reactions, allowing for the incorporation of diverse functional groups or modifications. This flexibility makes 3,8-Diethynyl-1,10-phenanthroline a valuable tool for the design and assembly of novel organic compounds with tailored properties and applications.Overall, the strategic incorporation of 3,8-Diethynyl-1,10-phenanthroline into synthetic pathways offers chemists a powerful platform for the development of advanced materials, fine chemicals, and pharmaceutical agents. Its structural versatility and reactivity continue to drive innovation in the field of chemical synthesis, facilitating the creation of complex molecules and functional materials with increasing precision and efficiency.
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